Assistant Research Professor

Dr. Bruno Frka-Petesic graduated theoretical soft matter Physics from the University of Paris 7 (2006) and later defended his Ph.D. in experimental Physics at the Univ. of Paris 6 (2010), where he worked under the supervision of Prof. Régine Perzynski (PHENIX lab) on the control of self-assembly routes of magnetic nanoparticles. As a postdoctoral researcher, he worked at Cermav-CNRS (Grenoble, France, with Dr. Laurent Heux) and at the École Normale Supérieure de Paris (ENS-Paris, PSL, France, with Dr. Christophe Tribet) before joining the Vignolini group. His research interest is primarily focused on better understanding and controlling collective phenomena such as self-assembly and self-organization in soft matter systems from the nanoscale to the macroscale. His current research is focused on controlling the self-assembly of Cellulose Nanocrystals (CNCs) in thin films for optic and photonic applications. He also explores dynamic effects in out-of-equilibrium, evolving or dissipative conditions, e.g., under the influence of external fields, mechanic solicitations, drying effects and slow aggregation processes. 

Bruno is also co-founder of the Entrepreneurial Postdocs of Cambridge society (EPOC, https://www.epoc.group.cam.ac.uk), a Cambridge-based organisation that develops and delivers initiatives to support Cambridge researchers in their pursuit of business and entrepreneurial ventures, and to awaken them to the multitude of opportunities around them. 

Publications

The Self-Assembly of Cellulose Nanocrystals: Hierarchical Design of Visual Appearance.
RM Parker, G Guidetti, CA Williams, T Zhao, A Narkevicius, S Vignolini, B Frka-Petesic
Adv Mater
(2017)
30
Controlling the Photonic Properties of Cholesteric Cellulose Nanocrystal Films with Magnets
B Frka-Petesic, G Guidetti, G Kamita, S Vignolini
Advanced materials (Deerfield Beach, Fla.)
(2017)
29
Dynamically Controlled Iridescence of Cholesteric Cellulose Nanocrystal Suspensions Using Electric Fields
B Frka-Petesic, H Radavidson, B Jean, L Heux
Adv Mater
(2017)
29
Shape Memory Cellulose-Based Photonic Reflectors.
A Espinha, G Guidetti, MC Serrano, B Frka-Petesic, AG Dumanli, WY Hamad, Á Blanco, C López, S Vignolini
ACS Applied Materials and Interfaces
(2016)
8
Hierarchical Self-Assembly of Cellulose Nanocrystals in a Confined Geometry
RM Parker, B Frka-Petesic, G Guidetti, G Kamita, G Consani, C Abell, S Vignolini
ACS Nano
(2016)
10
Biocompatible and Sustainable Optical Strain Sensors for Large‐Area Applications
G Kamita, B Frka‐Petesic, A Allard, M Dargaud, K King, AG Dumanli, S Vignolini
Advanced Optical Materials
(2016)
4
Aggregation of Antibody Drug Conjugates at Room Temperature: SAXS and Light Scattering Evidence for Colloidal Instability of a Specific Subpopulation.
B Frka-Petesic, D Zanchi, N Martin, S Carayon, S Huille, C Tribet
Langmuir
(2016)
32
Aggregation of Antibody Drug Conjugates at Room Temperature: SAXS and Light Scattering Evidence for Colloidal Instability of a Specific Subpopulation
B Frka-Petesic, D Zanchi, N Martin, S Carayon, S Huille, C Tribet
Langmuir : the ACS journal of surfaces and colloids
(2016)
32
Cellulose Bio-inspired Hierarchical Structures
S Vignolini
Optics InfoBase Conference Papers
(2016)
253
Negative Diamagnetic Anisotropy and Birefringence of Cellulose Nanocrystals
B Frka-Petesic, J Sugiyama, S Kimura, H Chanzy, G Maret
Macromolecules
(2015)
48

Assistant Research Professor

Telephone number

01223 334372 (shared)

Email address

College